Device for measuring true stress and true strain of sample

A technology of true strain and true stress, applied in measuring devices, using stable tension/pressure to test the strength of materials, instruments, etc., can solve the problem that the true stress and true strain cannot be accurately described, and the accuracy of true stress and true strain decreases, etc. problems, to achieve a wide range of applicable sample sizes, high accuracy and good results

Pending Publication Date: 2020-01-10
XI'AN PETROLEUM UNIVERSITY
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] In the field of engineering, the true stress and true strain values ​​calculated by using nominal stress and nominal strain cannot accurately describe the true stress and true strain
Routinely used calculation methods of true stress and true strain (based on the measured engineering stress and engineering strain, the quantitative formula is used to calculate: σ=S(1+e), ε=ln(1+e); σ is true stress, ε is the true strain, S is the engineering stress, and e is the engineering strain) Due to the existence of experimental factors and the defects of the method itself, the accuracy between true stress and true strain is further reduced

Method used

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  • Device for measuring true stress and true strain of sample
  • Device for measuring true stress and true strain of sample

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Embodiment Construction

[0014] The structural principle and working principle of the present invention will be further described in detail below in conjunction with the accompanying drawings.

[0015] see figure 1 , 2 , a device for measuring the true stress and true strain of a sample, comprising an upper clamp 1 connected to one end of a sample 2; an extensometer 3 and a clip-on extensometer 4 clamped on the sample 2; The lower chuck 5 is connected to the other end of the sample 2, and the lower chuck 5 is connected to the fixing device 7 through a screw 6; one side of the fixing device 7 is provided with a suspended plate 15, and the right end of the suspended plate 15 is connected to the fixing device through a vertical plate 14. 7 are fixedly connected at one end; a screw mandrel 11 is provided between the suspension plate 15 and the upper surface of the fixing device 7; the upper surface of the fixing device 7 on the right side of the screw mandrel 11 is provided with a motor 8, and the upper ...

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Abstract

A device for measuring true stress and true strain of a sample comprises an upper chuck which is connected with the sample; an extensometer and a clamp type extensometer which are clamped on the sample; a lower chuck which is connected with the sample and a fixed device; a suspension plate which is arranged on the fixed device and is connected with the fixed device through a vertical plate; a screw rod which is arranged between the suspension plate and the fixed device; a motor which is arranged on the fixed device and connected with a first cylindrical gear, wherein the first cylindrical gearis meshed with a second cylindrical gear, the second cylindrical gear is assembled on a lead screw, and a moving device is assembled in the middle section of a lead screw and connected with the clamptype extensometer and a guide groove. The gear drives the screw rod to rotate and a moving device moves up and down; the clamp type extensometer reciprocates up and down in the direction of the guiderail, the sample is necked, the clamp type extensometer is clamped at the necking position of the sample, outputs the size change data of the sample to a computer, and draws a relation curve of realstress and real strain. The accuracy is high, the practicability is high, the operation is convenient, and the effect is good.

Description

technical field [0001] The invention belongs to the technical field of testing devices, in particular to a device for measuring real stress and real strain of a sample. Background technique [0002] In the field of engineering, the true stress and true strain values ​​calculated by using the nominal stress and nominal strain cannot accurately describe the true stress and true strain. Routinely used calculation methods of true stress and true strain (based on the measured engineering stress and engineering strain, the quantitative formula is used to calculate: σ=S(1+e), ε=ln(1+e); σ is true Stress, ε is the true strain, S is the engineering stress, and e is the engineering strain) Due to the existence of experimental factors and the defects of the method itself, the accuracy between true stress and true strain is further reduced. Contents of the invention [0003] In order to solve the above problems, the object of the present invention is to provide a measuring device for...

Claims

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Application Information

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IPC IPC(8): G01N3/08G01N3/04G01D21/02
CPCG01N3/08G01N3/04G01D21/02
Inventor 许天旱雷志胜蔡炎桥闫可安林宏丁一明
Owner XI'AN PETROLEUM UNIVERSITY
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